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Experimental evaluation of the cooling and heating dynamics for a vertical ventilation concept in a generic car cabin

机译:通用汽车舱垂直通风概念冷却和加热动力学的实验评价

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A low-momentum ceiling-based ventilation concept is compared to dashboard ventilation in a full-scale generic car cabin (GCC).The dimensions of the cabin correspond to the interior of a typical mid-size car. To provide different boundary conditions, representing winter and summer, the GCC is equipped with a jacket cooling/heating. Thermal manikins simulate the heat release and the obstruction of passengers. With the objective to verify the thermal comfort and the global heat transport characteristics in the GCC, the velocities as well as the air and surface temperatures are recorded. In the present study, the cooling and heating dynamics of the low-momentum ceiling ventilation are examined and compared to a simplified dashboard ventilation with regard to thermal comfort and heating/cooling efficiency. It is found that the cooling and heating dynamics of the low-momentum ventilation differ significantly in comparison with the dashboard ventilation. Overall the low-momentum ceiling offers several benefits regarding the thermal comfort and efficiency.
机译:将基于低动量的天花板通风概念与全尺寸通用车厢(GCC)的仪表板通风进行比较。机舱的尺寸对应于典型的中型汽车的内部。提供不同的边界条件,代表冬季和夏季,GCC配备夹克冷却/加热。热马尼克斯模拟了乘客的热释放和阻塞。目的验证GCC中的热舒适度和全球热传输特性,记录速度以及空气和表面温度。在本研究中,检查了低动量天花板通风的冷却和加热动力学,并与关于热舒适性和加热/冷却效率的简化仪表板通风进行了比较。结果发现,与仪表板通风相比,低动量通气的冷却和加热动力学显着不同。总体而言,低动量天花板在热舒适和效率上提供了多种优势。

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